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首页> 外文期刊>Plant Biotechnology Journal >Cell wall targeted in planta iron accumulation enhances biomass conversion and seed iron concentration in Arabidopsis and rice
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Cell wall targeted in planta iron accumulation enhances biomass conversion and seed iron concentration in Arabidopsis and rice

机译:靶向植物铁积累的细胞壁增强了拟南芥和稻米的生物质转化和种子铁浓度

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Conversion of nongrain biomass into liquid fuel is a sustainable approach to energy demands as global population increases. Previously, we showed that iron can act as a catalyst to enhance the degradation of lignocellulosic biomass for biofuel production. However, direct addition of iron catalysts to biomass pretreatment is diffusion-limited, would increase the cost and complexity of biorefinery unit operations and may have deleterious environmental impacts. Here, we show a new strategy for in planta accumulation of iron throughout the volume of the cell wall where iron acts as a catalyst in the deconstruction of lignocellulosic biomass. We engineered CBM-IBP fusion polypeptides composed of a carbohydrate-binding module family 11 (CBM11) and an iron-binding peptide (IBP) for secretion into Arabidopsis and rice cell walls. CBM-IBP transformed Arabidopsis and rice plants show significant increases in iron accumulation and biomass conversion compared to respective controls. Further, CBM-IBP rice shows a 35% increase in seed iron concentration and a 40% increase in seed yield in greenhouse experiments. CBM-IBP rice potentially could be used to address iron deficiency, the most common and widespread nutritional disorder according to the World Health Organization.
机译:随着全球人群的增加,非林氏生物质转化为液体燃料是能源需求的可持续方法。以前,我们表明铁可以作为催化剂,以增强木质纤维素生物量的降解,用于生物燃料生产。然而,将铁催化剂的直接添加到生物质预处理是扩散限制,将增加生物晶体单位操作的成本和复杂性,并且可能具有有害的环境影响。在这里,我们展示了在整个细胞壁的整个体积的铁植物积累的新策略,其中铁作为木质纤维素生物质的解构中的催化剂。我们设计了由碳水化合物结合模块11(CBM11)的CBM-IBP融合多肽组成,以及用于分泌到拟南芥和水稻细胞壁中的铁结合肽(IBP)。与各自的对照相比,CBM-IBP转化的拟南芥和水稻植物显示出铁积累和生物质转化的显着增加。此外,CBM-IBP大米显示出种子铁浓度增加35%,温室实验中的种子产量增加40%。 CBM-IBP米可能用于解决缺铁,根据世界卫生组织的最常见和最普遍的营养障碍。

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